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    • 1. 发明授权
    • Continued telecommunication with weak links
    • 持续电讯薄弱环节
    • US08380525B2
    • 2013-02-19
    • US12666203
    • 2007-06-25
    • Magnus AlmgrenStefan BruhnPer Skillermark
    • Magnus AlmgrenStefan BruhnPer Skillermark
    • G10L21/00
    • H04W28/24G10L19/00H04W76/20H04W88/181
    • According to the invention a receiving end terminal (RET) enters a delay mode based on the detecting of the quality of the link being lower than a threshold. In this delay mode, the receiving end terminal provides a reception delay indicator (RDI) for a sending end terminal (SET). The sending end terminal (SET) receives the reception delay indicator (RDI) and provides an end of speech indicator (ESI) for the receiving end terminal (RET) at an end of a speech coding interval (SC). The receiving end terminal (RET) uses the reception delay indicator (RDI) and end of speech indicator (ESI) to define a first time interval (AL1) during which a speech decoder is disabled. The speech decoder is again activated after the first time interval (AL1).
    • 根据本发明,接收终端(RET)基于链路质量的检测低于阈值而进入延迟模式。 在该延迟模式中,接收端终端为发送终端(SET)提供接收延迟指示符(RDI)。 在语音编码间隔(SC)结束时,发送终端(SET)接收接收延迟指示符(RDI)并为接收终端(RET)提供终止语音指示符(ESI)。 接收端终端(RET)使用接收延迟指示符(RDI)和结尾语音指示符(ESI)来定义禁止语音解码器的第一时间间隔(AL1)。 语音解码器在第一时间间隔(AL1)之后再次被激活。
    • 2. 发明申请
    • Continued Telecommunication with Weak Links
    • 持续电信与弱联系
    • US20100324918A1
    • 2010-12-23
    • US12666203
    • 2007-06-25
    • Magnus AlmgrenStefan BruhnPer Skillermark
    • Magnus AlmgrenStefan BruhnPer Skillermark
    • G10L19/00H04B1/56
    • H04W28/24G10L19/00H04W76/20H04W88/181
    • According to the invention a receiving end terminal (RET) enters a delay mode based on the detecting of the quality of the link being lower than a threshold. In this delay mode, the receiving end terminal provides a reception delay indicator (RDI) for a sending end terminal (SET). The sending end terminal (SET) receives the reception delay indicator (RDI) and provides an end of speech indicator (ESI) for the receiving end terminal (RET) at an end of a speech coding interval (SC). The receiving end terminal (RET) uses the reception delay indicator (RDI) and end of speech indicator (ESI) to define a first time interval (AL1) during which a speech decoder is disabled. The speech decoder is again activated after the first time interval (AL1).
    • 根据本发明,接收终端(RET)基于链路质量的检测低于阈值而进入延迟模式。 在该延迟模式中,接收端终端为发送终端(SET)提供接收延迟指示符(RDI)。 在语音编码间隔(SC)结束时,发送终端(SET)接收接收延迟指示符(RDI)并为接收终端(RET)提供终止语音指示符(ESI)。 接收端终端(RET)使用接收延迟指示符(RDI)和结尾语音指示符(ESI)来定义禁止语音解码器的第一时间间隔(AL1)。 语音解码器在第一时间间隔(AL1)之后再次被激活。
    • 3. 发明授权
    • Adaptive radio repeaters
    • 自适应无线电中继器
    • US08526877B2
    • 2013-09-03
    • US12747803
    • 2007-12-14
    • Magnus AlmgrenPer Skillermark
    • Magnus AlmgrenPer Skillermark
    • H04B3/36
    • H04B7/15535
    • One method for controlling operation of a repeater in radio communication system comprises determination whether operation of a node in the radio communication system benefits from assistance of a repeater and transmitting, from the node in the radio communication system, a radio signal to the repeater being indicative of an order to promptly activate the repeater if the benefit exists. One complementary method for controlling operation of a repeater in radio communication system comprises detection (252), in the repeater, of a radio signal being indicative of an order to activate the repeater. Amplification in the repeater is activated (254) as a response to such a detected radio signal and uplink traffic from a user terminal being located in a vicinity of the repeater and/or downlink traffic to the user terminal is amplified (256). A repeater, a node, a user terminal and a system operating according to the method are presented.
    • 用于控制无线电通信系统中的中继器的操作的一种方法包括确定无线电通信系统中的节点的操作是否受益于中继器的帮助,并且从无线电通信系统中的节点向无线电通信系统的无线电信号发送指示 的命令,以便在存在利益的情况下及时激活中继器。 用于控制无线电通信系统中的中继器的操作的一种补充方法包括在中继器中检测(252)无线电信号,其指示激活中继器的命令。 作为对这种检测到的无线电信号的响应,中继器中的放大被激活(254),并且来自位于中继器附近的用户终端和/或下行链路业务的用户终端的上行链路业务被放大(256)。 提出了一种中继器,节点,用户终端和根据该方法操作的系统。
    • 4. 发明申请
    • Adaptive Radio Repeaters
    • 自适应无线电中继器
    • US20100273415A1
    • 2010-10-28
    • US12747767
    • 2007-12-14
    • Magnus AlmgrenPer Skillermark
    • Magnus AlmgrenPer Skillermark
    • H04B7/14
    • H04B7/15535H04B7/15514H04W16/26
    • A repeater device (R) for use in a radio communication system comprises a detector (44), arranged for detecting any existence of radio signaling to and/or from a user terminal being situated in a vicinity of the repeater device (R). The repeater device (R) further comprises an amplifier arrangement (46), arranged for amplifying uplink and/or downlink traffic and means (48) for activating the amplifier arrangement. The means (48) for activating the amplifier arrangement is arranged for activating the amplifier arrangement (46) as a response to an existence of the radio signaling. A method for controlling operation of a repeater in radio communication system comprises detecting, in the repeater, of radio signaling to and/or from a user terminal being situated in a vicinity of the repeater. Amplification in the repeater is activated as a response to an existence of the radio signaling and uplink and/or downlink traffic is amplified.
    • 用于无线电通信系统的中继器设备(R)包括检测器(44),其被设置用于检测到位于中继器设备(R)附近的用户终端和/或从位于中继器设备附近的用户终端的任何无线电信令的存在。 中继器装置(R)还包括布置成放大上行链路和/或下行链路业务的放大器装置(46)和用于激活放大器装置的装置(48)。 用于激活放大器装置的装置(48)被布置成作为对无线电信号的存在的响应来激活放大器装置(46)。 一种用于控制无线电通信系统中的中继器的操作的方法,包括在中继器中检测到位于中继器附近的用户终端和/或从位于中继器附近的用户终端的无线电信令。 作为对无线电信令的存在的响应激活中继器中的放大,并且上行链路和/或下行链路业务被放大。
    • 6. 发明申请
    • Power Control and Channel Selection in a Multi Channel Communication System
    • 多通道通信系统中的功率控制和通道选择
    • US20090080376A1
    • 2009-03-26
    • US11793913
    • 2004-12-22
    • Magnus AlmgrenPer Skillermark
    • Magnus AlmgrenPer Skillermark
    • H04W72/04
    • H04W52/346
    • A method for allocating power and channels to connections in a multi-channel access based wireless communication system in which each connection is acting independently of the other. The quality of each channel of a connection is measured at successive time steps (n, n+1). The measurements from a previous time step (n) are used to allocate, in the following time step (n+1), an average power of all channels the connection uses as well as individual power settings in-between said channels. The average power is controlled using an outer fairness loop balancing the average channel power against average bit rate per channel. The individual power settings is controlled using an inner capacity loop allocating much power to good channels and restricted power to poor channels. Each loop has a respective target relation and the results of the loops are combined in order to determine transmission power in the next time step. The method is of distributed character and may execute on individual receiving nodes. Further, it may be applied in the up link or in the down link. The invention also relates to transmitting and receiving nodes provided with means for executing the method.
    • 一种用于在基于多信道接入的无线通信系统中的连接上分配功率和信道的方法,其中每个连接独立于另一个。 在连续的时间步长(n,n + 1)测量连接的每个通道的质量。 来自先前时间步长(n)的测量值用于在随后的时间步长(n + 1)中分配所述连接所使用的所有通道的平均功率以及所述通道之间的各个功率设置。 平均功率使用平衡通道功率与每个通道的平均位速率平衡的外部公平环来控制。 使用内部容量环路控制各个功率设置,为良好的通道分配大量功率,并将功率限制在较差的通道。 每个循环具有各自的目标关系,并且组合循环的结果以便在下一个时间步长中确定发射功率。 该方法具有分布式特征,可以在各个接收节点上执行。 此外,它可以应用于上行链路或下行链路。 本发明还涉及提供有用于执行该方法的装置的发送和接收节点。
    • 10. 发明授权
    • Power control and channel selection in a multi channel communication system
    • 多通道通信系统中的功率控制和通道选择
    • US07933218B2
    • 2011-04-26
    • US11793913
    • 2004-12-22
    • Magnus AlmgrenPer Skillermark
    • Magnus AlmgrenPer Skillermark
    • H04B7/005
    • H04W52/346
    • A method for allocating power and channels to connections in a multi-channel access based wireless communication system in which each connection is acting independently of the other. The quality of each channel of a connection is measured at successive time steps (n, n+1). The measurements from a previous time step (n) are used to allocate, in the following time step (n+1), an average power of all channels the connection uses as well as individual power settings in-between said channels. The average power is controlled using an outer fairness loop balancing the average channel power against average bit rate per channel. The individual power settings is controlled using an inner capacity loop allocating much power to good channels and restricted power to poor channels. Each loop has a respective target relation and the results of the loops are combined in order to determine transmission power in the next time step. The method is of distributed character and may execute on individual receiving nodes. Further, it may be applied in the up link or in the down link.
    • 一种用于在基于多信道接入的无线通信系统中的连接上分配功率和信道的方法,其中每个连接独立于另一个。 在连续的时间步长(n,n + 1)测量连接的每个通道的质量。 来自先前时间步长(n)的测量值用于在随后的时间步长(n + 1)中分配所述连接所使用的所有通道的平均功率以及所述通道之间的各个功率设置。 平均功率使用平衡通道功率与每个通道的平均位速率平衡的外部公平环来控制。 使用内部容量环路控制各个功率设置,为良好的通道分配大量功率,并将功率限制在较差的通道。 每个循环具有各自的目标关系,并且组合循环的结果以便在下一个时间步长中确定发射功率。 该方法具有分布式特征,可以在各个接收节点上执行。 此外,它可以应用于上行链路或下行链路。